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Chromosomal copy number analysis of products of conception by conventional karyotyping and next‐generation sequencing

PURPOSE: Chromosomal abnormalities are a major cause of spontaneous abortion, and conventional G‐banded karyotyping (G‐banding) is mainly utilized for chromosomal analysis. Recently, next‐generation sequencing (NGS) has been introduced for chromosomal analysis. Here, we aimed to investigate the appl...

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Autores principales: Tamura, Yuki, Santo, Mitsuo, Araki, Yasuhisa, Matsubayashi, Hidehiko, Takaya, Yukiko, Kitaya, Kotaro, Doshida, Masakazu, Yamaguchi, Kohei, Mizuta, Shimpei, Takahashi, Chie, Kim, Namhyo, Okuno, Koichiro, Takeuchi, Takumi, Ishikawa, Tomomoto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7812460/
https://www.ncbi.nlm.nih.gov/pubmed/33488285
http://dx.doi.org/10.1002/rmb2.12351
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author Tamura, Yuki
Santo, Mitsuo
Araki, Yasuhisa
Matsubayashi, Hidehiko
Takaya, Yukiko
Kitaya, Kotaro
Doshida, Masakazu
Yamaguchi, Kohei
Mizuta, Shimpei
Takahashi, Chie
Kim, Namhyo
Okuno, Koichiro
Takeuchi, Takumi
Ishikawa, Tomomoto
author_facet Tamura, Yuki
Santo, Mitsuo
Araki, Yasuhisa
Matsubayashi, Hidehiko
Takaya, Yukiko
Kitaya, Kotaro
Doshida, Masakazu
Yamaguchi, Kohei
Mizuta, Shimpei
Takahashi, Chie
Kim, Namhyo
Okuno, Koichiro
Takeuchi, Takumi
Ishikawa, Tomomoto
author_sort Tamura, Yuki
collection PubMed
description PURPOSE: Chromosomal abnormalities are a major cause of spontaneous abortion, and conventional G‐banded karyotyping (G‐banding) is mainly utilized for chromosomal analysis. Recently, next‐generation sequencing (NGS) has been introduced for chromosomal analysis. Here, we aimed to investigate the applicability and utility of NGS‐based chromosomal analysis of products of conception (POC) on chorionic villus samples from spontaneous abortion. METHODS: The results of chromosomal analysis of 7 chorionic villus samples from spontaneous abortion were compared between conventional G‐banding and NGS‐based chromosomal copy number analysis. Age dependency and frequency of each chromosomal aneuploidy were evaluated for 279 cases analyzed by NGS. RESULTS: Excluding two cases (culture failure and maternal cell contamination), the results were consistent between G‐banding and NGS. For cases analyzed by NGS, the rate of chromosomal abnormality increased in a maternal age‐dependent manner. The frequency of each chromosomal aneuploidy detected by NGS was almost the same as that previously reported. Finally, NGS analysis was possible for difficult cases by G‐banding analysis, such as culture failure, maternal cell contamination, long‐term storage cases, and low cell number. CONCLUSIONS: Chromosome analysis using NGS not only obtains comparable results to conventional G‐banding, but also can analyze POC more accurately and efficiently.
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spelling pubmed-78124602021-01-22 Chromosomal copy number analysis of products of conception by conventional karyotyping and next‐generation sequencing Tamura, Yuki Santo, Mitsuo Araki, Yasuhisa Matsubayashi, Hidehiko Takaya, Yukiko Kitaya, Kotaro Doshida, Masakazu Yamaguchi, Kohei Mizuta, Shimpei Takahashi, Chie Kim, Namhyo Okuno, Koichiro Takeuchi, Takumi Ishikawa, Tomomoto Reprod Med Biol Original Articles PURPOSE: Chromosomal abnormalities are a major cause of spontaneous abortion, and conventional G‐banded karyotyping (G‐banding) is mainly utilized for chromosomal analysis. Recently, next‐generation sequencing (NGS) has been introduced for chromosomal analysis. Here, we aimed to investigate the applicability and utility of NGS‐based chromosomal analysis of products of conception (POC) on chorionic villus samples from spontaneous abortion. METHODS: The results of chromosomal analysis of 7 chorionic villus samples from spontaneous abortion were compared between conventional G‐banding and NGS‐based chromosomal copy number analysis. Age dependency and frequency of each chromosomal aneuploidy were evaluated for 279 cases analyzed by NGS. RESULTS: Excluding two cases (culture failure and maternal cell contamination), the results were consistent between G‐banding and NGS. For cases analyzed by NGS, the rate of chromosomal abnormality increased in a maternal age‐dependent manner. The frequency of each chromosomal aneuploidy detected by NGS was almost the same as that previously reported. Finally, NGS analysis was possible for difficult cases by G‐banding analysis, such as culture failure, maternal cell contamination, long‐term storage cases, and low cell number. CONCLUSIONS: Chromosome analysis using NGS not only obtains comparable results to conventional G‐banding, but also can analyze POC more accurately and efficiently. John Wiley and Sons Inc. 2020-10-08 /pmc/articles/PMC7812460/ /pubmed/33488285 http://dx.doi.org/10.1002/rmb2.12351 Text en © 2020 The Authors. Reproductive Medicine and Biology published by John Wiley & Sons Australia, Ltd on behalf of Japan Society for Reproductive Medicine. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Tamura, Yuki
Santo, Mitsuo
Araki, Yasuhisa
Matsubayashi, Hidehiko
Takaya, Yukiko
Kitaya, Kotaro
Doshida, Masakazu
Yamaguchi, Kohei
Mizuta, Shimpei
Takahashi, Chie
Kim, Namhyo
Okuno, Koichiro
Takeuchi, Takumi
Ishikawa, Tomomoto
Chromosomal copy number analysis of products of conception by conventional karyotyping and next‐generation sequencing
title Chromosomal copy number analysis of products of conception by conventional karyotyping and next‐generation sequencing
title_full Chromosomal copy number analysis of products of conception by conventional karyotyping and next‐generation sequencing
title_fullStr Chromosomal copy number analysis of products of conception by conventional karyotyping and next‐generation sequencing
title_full_unstemmed Chromosomal copy number analysis of products of conception by conventional karyotyping and next‐generation sequencing
title_short Chromosomal copy number analysis of products of conception by conventional karyotyping and next‐generation sequencing
title_sort chromosomal copy number analysis of products of conception by conventional karyotyping and next‐generation sequencing
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7812460/
https://www.ncbi.nlm.nih.gov/pubmed/33488285
http://dx.doi.org/10.1002/rmb2.12351
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